关于意大利巴西利卡塔阿尔皮山地区构造环境的新见解

V. L. Bruna, F. Agosta, G. Prosser
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引用次数: 22

摘要

阿尔皮山是破解南亚平宁褶皱冲断带构造背景的关键区域。在那里,高角度断裂将阿普利亚内台地的中生代碳酸盐岩及其陆源墨西尼亚沉积盖层与异体地体并置。近年来,与阿尔皮山地区演化有关的两种主要构造模式将阿普利亚碳酸盐岩的大量发掘归因于两种不同的机制。第一,强调了高角度断裂对碳酸盐岩和异体地体的影响和横切作用。第二个模型推断阿普利安地台碳酸盐岩的大量发掘是由于低角度伸展断裂所致。鉴于上述差异,本工作显示了原始野外和实验室分析的结果,旨在重建阿普利亚碳酸盐岩和异位元地体的结构背景。特别地,通过详细的野外和微观结构分析,对同种异体地体的两个不同的褶皱阶段和冲断片的几何形状进行了评估。在阿普利亚碳酸盐岩中,记录了与上墨西尼亚沉积相结合的同沉积高角度断裂的产状和运动。此外,根据构造的邻近和横切关系,区分了收缩期、走滑期和伸展期的构造。最后,从Monte Alpi地区变形的时空演化角度对研究结果进行了讨论;前上新世至全新世的五个主要构造阶段被破译。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New insights on the structural setting of the Monte Alpi area, Basilicata, Italy
The Monte Alpi is a key area to decipher the structural setting of the southern Apennines fold-and-thrust belt. There, high-angle faults juxtapose Mesozoic carbonates of the inner Apulian Platform, and their terrigenous Messinian sedimentary cover, against the allochthon terranes. In the recent past, two main tectonic models related to the evolution of the Monte Alpi area ascribed the significant exhumation of the Apulian carbonates to two different mechanisms. The first one, highlighted the role of high-angle faults, which affect and cross-cut both carbonates and allochthon terranes. The second model, inferred the significant exhumation of the Apulian Platform carbonates as due to low-angle extensional faulting. In light of the aforementioned discrepancies, the present work shows the results of original field and laboratory analyses aimed at reconstructing the structural setting of both Apulian carbonates and allochton terranes. In particular, two different folding stages and the geometry of the thrust sheets are assessed, by means of detailed field and micro-structural analyses, for the allochton terranes. In the Apulian carbonates, both attitude and kinematics of the syn-sedimentary high-angle faults bounding the Upper Messinian deposits are documented. Furthermore, the tectonic structures associated to the contractional, strike-slip and extensional stages are distinguished based on their abutting and crosscutting relationships. Finally, the results of such a work are discussed in terms of the time-space evolution of deformation in the Monte Alpi area; five main tectonic stages are deciphered for the Pre-Pliocene to Holocene times.
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